微量元素锌和硼对蚕豆生长和产量的影响

Susmita Roy, Shrabani Das, K. Saha, M. Rahman, S. Sarkar, M. Rashid, S. Paul
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引用次数: 1

摘要

为了研究锌和硼对蚕豆生长和产量的影响,本试验于rabi季节在孟加拉国农业大学(BAU) Mymensingh农学田间实验室进行。试验采用0、1.0和2.0 kg Zn hm -1 3个水平的锌和0、1.0 kg B hm -1、0.5 kg B hm -1(基施)+ 0.5 kg B hm -1(花前叶施)和0.5 kg B hm -1(播后30 d叶施)+ 0.5 kg B hm -1(花前叶施)4个水平的硼。试验采用随机完全区组设计,设3个重复。锌处理下,施锌1 kg时,蚕豆株高最高(67.9 cm),荚果数最高(33.3 t),籽粒产量最高(2.24 t ha-1),秸秆产量最高(2.55 t ha-1),对照处理最低。在硼处理下,0.5 kg B ha-1(基施)+ 0.5 kg B ha-1(花前叶施)处理的单株分枝数(6.51)、荚果数(39.1)、种子产量(2.14 t ha-1)和秸秆产量(2.42 t ha-1)最高。在互作过程中,1.0 kg Zn -1 + 0.5 kg bha -1(基施)+ 0.5 kg bha -1(花前叶施)处理的单株分枝数和荚果数分别为7.22个和41.93个,籽粒产量和秸秆产量分别为2.46 t ha-1和3.05 t ha-1,而对照处理的籽粒和秸秆产量最低。综上所述,1.0 kg Zn - ha-1配以0.5 kg B - ha-1(基施)+ 0.5 kg B - ha-1(花前叶施)是蚕豆种子产量较有前景的组合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Faba bean (Vicia faba L.) growth and seed yield as influenced by zinc and boron micronutrients
The experiment was conducted at the Agronomy Field Laboratory, Bangladesh Agricultural University (BAU), Mymensingh during rabi season, to study the effect of zinc and boron on growth and yield of faba bean (Vicia faba L.). The experiment consisted with three levels of zinc viz. 0, 1.0 and 2.0 kg Zn ha-1 and four levels of boron viz. 0, 1.0 kg B ha-1, 0.5 kg B ha-1 (basal application) + 0.5 kg B ha-1 (foliar application at pre-flowering stage) and 0.5 kg B ha-1 (foliar application at 30 days after sowing) + 0.5 kg B ha-1 (foliar application at pre-flowering stage). The experiment was laid out in randomized complete block design with three replications. In case of zinc, the highest plant height (67.9 cm), pods plant-1 (33.3), seed yield (2.24 t ha-1) and stover yield (2.55 t ha-1) of faba bean was observed when fertilized with 1 kg Zn ha-1whereas corresponding lowest values were recorded from control treatment. In case of boron, the highest number of branches plant-1 (6.51), pods plant-1 (39.1), seed yield (2.14 t ha-1) and stover yield (2.42 t ha-1) were obtained from application of 0.5 kg B ha-1 (basal application) + 0.5 kg B ha-1 (foliar application at pre-flowering stage). In interaction, the highest number of branches plant-1 (7.22), pods plant-1 (41.93), seed yield (2.46 t ha-1) and stover yield (3.05 t ha-1) were recorded from application of 1.0 kg Zn ha-1 with 0.5 kg B ha-1 (basal application) + 0.5 kg B ha-1 (foliar application at pre-flowering stage) whereas the lowest seed and stover yields were recorded from control treatment. Based on the present study it can be concluded that application of 1.0 kg Zn ha-1 coupled with 0.5 kg B ha-1 (basal application) + 0.5 kg B ha-1 (foliar application at pre-flowering stage) appears as the promising combination in respect of seed yield of faba bean.
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